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Nitrile reaction

Although acetonitrile is one of the more stable nitriles, it undergoes typical nitrile reactions and is used to produce many types of nitrogen-containing compounds, eg, amides (15), amines (16,17) higher molecular weight mono- and dinitriles (18,19) halogenated nitriles (20) ketones (21) isocyanates (22) heterocycles, eg, pyridines (23), and imidazolines (24). It can be trimerized to. f-trimethyltriazine (25) and has been telomerized with ethylene (26) and copolymerized with a-epoxides (27). [Pg.219]

Adiponitrile undergoes the typical nitrile reactions, eg, hydrolysis to adipamide and adipic acid and alcoholysis to substituted amides and esters. The most important industrial reaction is the catalytic hydrogenation to hexamethylenediarnine. A variety of catalysts are used for this reduction including cobalt—nickel (46), cobalt manganese (47), cobalt boride (48), copper cobalt (49), and iron oxide (50), and Raney nickel (51). An extensive review on the hydrogenation of nitriles has been recendy pubUshed (10). [Pg.220]

Hydrogen cyanide, as the nitrile of formic acid [64-18-6] CH2O2, undergoes many of the typical nitrile reactions. For example, it can be hydrolyzed to formic acid by aqueous sulfuric acid (4) it can be hydrogenated to methylamine [74-89-5], CH N (5) and it can be converted to phenylformamidine [618-39-3], CyHgN2, using aniline and hydrogen chloride (6). [Pg.376]

The pharmacological versatility of this general substitution strategy is further illustrated by diazonium coupling of 14 with 2-nitrobenzenediazonium chloride to produce biarylal-dehyde 18. Formation of the oxime with hydroxylamine is followed by dehydration to the nitrile. Reaction with anhydrous methanolic hydrogen chloride leads to imino ether and addition-elimination of ammonia leads to the antidepressant amid-ine, nitrafudam (20). ... [Pg.130]

Kostic et al. recently reported the use of various palladium(II) aqua complexes as catalysts for the hydration of nitriles.456 crossrefil. 34 Reactivity of coordination These complexes, some of which are shown in Figure 36, also catalyze hydrolytic cleavage of peptides, decomposition of urea to carbon dioxide and ammonia, and alcoholysis of urea to ammonia and various carbamate esters.420-424, 427,429,456,457 Qggj-jy palladium(II) aqua complexes are versatile catalysts for hydrolytic reactions. Their catalytic properties arise from the presence of labile water or other solvent ligands which can be displaced by a substrate. In many cases the coordinated substrate becomes activated toward nucleophilic additions of water/hydroxide or alcohols. New palladium(II) complexes cis-[Pd(dtod)Cl2] and c - Pd(dtod)(sol)2]2+ contain the bidentate ligand 3,6-dithiaoctane-l,8-diol (dtod) and unidentate ligands, chloride anions, or the solvent (sol) molecules. The latter complex is an efficient catalyst for the hydration and methanolysis of nitriles, reactions shown in Equation (3) 435... [Pg.595]

CO oxidation, 38 236 differential heat of adsorption, 38 217 Biphasic systems, catalysis see Multiphase homogeneous catalysis BiPMo catalysts, 34 39 in formamide to nitrile reaction, 34 39 Bi-postdosing thermal desorption spectroscopy cyclohexene, 42 240... [Pg.54]

Aldehydo nitriles are readily available and can be used to prepare 4-amino-6-unsubstituted pyrimidines carrying one or more substituents in any of the other positions. Equivalents of the formyl group are also often used, for example, a 3-ethoxy-, 3-amino-, or 3-haloacrylonitrile. Most syntheses with /3-keto nitriles are carried out with equivalents thereof Such equivalents are /3-substituted /3-alkoxy-, /3-amino-, or /3-haloacrylonitriles. /3 -Ester nitrile reactions are also well established. Malononitriles and substituted malononitriles react readily with thiourea and N-substituted thioureas in refluxing ethanolic sodium ethoxide to form pyrimidine-4,6-diamines. An example is the reaction of N2-malononitrile 680 with N2-thiourea 681 to give N4- 4,6-diamino-2-(l//)-pyrimidinethione 682 which was then used in the synthesis of Ns-labeled adenine derivatives <2001JOC5463>. [Pg.198]

The product (15-2) from aldol condensation of meto-nitrobenzaldehyde with the dimethyl acetal from ethyl 4-formylacetoacetate (15-1) provides the starting material for a dihydropyridine in which one of the methyl groups is replaced by a nitrile. Reaction of (15-2) with the eneamine from isopropyl acetoacetate gives the corresponding dihydropyridine hydrolysis of the acetal function with aqueous acid affords the aldehyde (15-3). That function is then converted to its oxime (15-4) by reaction with hydroxylamine. Treatment of that intermediate with hot acetic acid leads the oxime to dehydrate to a nitrile. There is this obtained nilvadipine (15-5) [16]. [Pg.330]

Moreover we isolated complexes resulting from metathetical replacement in those cases in which formation of nitriles (Reactions 9 and 10) was not observed. [Pg.279]

Adipimilrile undergoes the typical nitrile reactions, e.g.. hydrolysis to adipamide and adipic acid and alcoholysis to substituted amides and esters. [Pg.1080]

It must be stated that the use of ethanol as solvent in the nitrile reaction makes it difficult to understand the mechanism. At this stage of our present results, it is particularly not possible to determine if the ester is formed from a direct addition of ethanol on the starting nitrile or from the amide as intermediate. As shown in Table 1, the less acidic HY zeolite favours ester formation while in the case of the HMg zeolites the amide is preferably formed. Such results seem to indicate that the ester formation occurs over weak acidic sites whereas the hydration reaction needs stronger acidic sites. [Pg.570]

Negishi reaction, 269 Negishi reagent, 129 Nickel complexes, 43 15 Nitrile reactions with... [Pg.288]


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1 Classification reactions Nitriles

1,3-dipolar cycloaddition reactions aliphatic nitrile oxides

1,3-dipolar cycloaddition reactions with nitrile imines

1,3-dipolar cycloaddition reactions with nitrile oxides

1,3-dipolar cycloaddition reactions with nitrile ylides

1.3- Dipolar cycloaddition reactions nitrile oxides

2- Nitrosopyridine, reaction with nitrile

2- Nitrosopyridine, reaction with nitrile oxides

4- Dialkylamino but-3-en-2-one reaction with nitrile oxides

5- Benzoyloxy-2 -furanone, reaction with aryl nitrile oxides

5-Acetoxy-2 -furanone, formation reaction with aryl nitrile oxides

A-Nitrile anions conjugate addition reactions

Acrylates cycloaddition reactions with nitrile oxides

Addition of nitriles (Thorpe reaction)

Aldehydes reactions with nitriles

Alkenes catalytic nitrile oxide reactions

Alkenes intramolecular reactions, nitrile oxides

Alkenes reaction with nitrile oxides

Alkynes reaction with nitrile oxides

Allenes reactions with nitriles

Aluminum selenide reaction with nitriles

Amine compounds nitrile imine nucleophile reactions

Amine reaction with nitriles

Aromatic nitriles reactions and characterisation

Aryl compounds alkyne/nitrile reactions

Aryl nitriles reaction with

Asymmetric reaction nitrile oxide addition

Asymmetric reactions nitrile oxide cycloadditions, diastereoselectivity

Asymmetric reactions nitrile oxides

Azirines, nitrile ylide structure 2 + 3]-cycloaddition reactions

Azirines, nitrile ylide structure carbene reactions

Benzenethiol reactions with nitriles

Blaise reaction nitriles

By the reaction of nitrile oxides

Carbanion reaction with nitriles

Carbanions reaction with nitriles

Carbenes reaction with nitriles

Carbon monoxide reaction with nitriles

Carbonyl compounds reaction with nitriles

Carboxylates reaction with nitriles

Cobaltacyclopentadienes reactions with nitriles

Cycloaddition reactions nitriles

Cycloaddition reactions of nitrile oxides with alkenes

Cycloaddition reactions, alkenes nitriles

D-mannono-nitriles Nef reaction

Diastereoselectivity nitrile ylides, cycloaddition reactions

Diazonium salts, reaction with substituted nitriles yields

Diels-Alder reactions of nitriles

Dimedone, reaction with nitriles

Dipolarophiles nitrile ylides, cycloaddition reactions

Double bonds nitrile imine -cycloaddition reactions

Electrophilic reactions nitrile trapping

Elimination reactions nitrile-forming

Enolate anions, esters, reaction with nitriles

Enolate anions, nitrile, reactions

Epoxides reactions with nitriles

Esters, conjugated, reaction with nitrile enolates

Ethers, vinyl reaction with nitrile oxides

Ethylmagnesium bromide, reaction with nitriles

Formaldehyde, reaction with nitriles

Functionalized oxirane, reaction with nitriles

Grignard reagents reaction with amides or nitriles to form

Grignard reagents, addition reactions nitriles

Halides, alkyl, reaction with nitrile enolates

Halo-nitriles, reaction with

Hydrogen selenide reaction with nitriles

Hydroxylamines reaction with nitriles

Imidoyl chlorides, nitrile ylides cycloaddition reactions

Insertion reactions nitrile

Intermolecular reactions nitrile trapping

Intramolecular nitrile oxide cycloaddition reaction

Intramolecular reaction nitrile oxide cyclization

Intramolecular reactions nitrile trapping

Iso nitrile reaction

Ketenes reaction with nitriles

LiAlH4, reaction with nitriles

Ligands nitrile reactions

Lithium diisopropylamide reaction with nitriles

Magnesium ester enolates reactions with nitriles

Metal atom reactions with nitriles

Metal carbonyls reaction with nitriles

Nitrile Converting Enzymes Involved in Natural and Synthetic Cascade Reactions

Nitrile Grignard reaction

Nitrile aldol reaction

Nitrile carbon centers, nucleophilic reactions

Nitrile enolates intramolecular reactions

Nitrile hydratase reactions catalyzed

Nitrile imines 2 + 3]-cycloaddition reactions

Nitrile imines asymmetric reactions, 1,3-dipolar

Nitrile imines electrocyclization reactions

Nitrile imines nucleophile reactions

Nitrile imines, reactions

Nitrile oxides INOC reaction

Nitrile oxides catalytic reactions

Nitrile oxides tandem reaction sequences

Nitrile oxides, cycloaddition reactions

Nitrile oxides, reaction with benzoquinones

Nitrile oxides, reactions

Nitrile reaction summary

Nitrile reaction with LDA

Nitrile reaction with LiAlH

Nitrile stabilized anions addition reactions

Nitrile ylides carbene reactions

Nitrile ylides electrocyclization reactions

Nitrile ylides nucleophile reactions

Nitrile ylides reactions

Nitrile ylides, -cycloaddition reactions

Nitrile-Alder-ene reaction

Nitriles Diels-Alder reactions

Nitriles Lewis acid catalyzed reactions

Nitriles Ritter-type reactions

Nitriles Vilsmeier-Haack reaction

Nitriles a-halo, reactions with organoboranes

Nitriles addition reactions

Nitriles cocycloaddition reactions

Nitriles cycloaddition reactions with acrylates

Nitriles cycloaddition reactions, diastereoselective

Nitriles displacement reactions

Nitriles heterogeneous reactions

Nitriles preparation reaction with Grignard reagents

Nitriles preparation reactions

Nitriles reaction with Grignard reagents

Nitriles reaction with alcohols

Nitriles reaction with alkenes

Nitriles reaction with azide

Nitriles reaction with chromium tricarbonyl

Nitriles reaction with hydrogen

Nitriles reaction with organomagnesium compounds

Nitriles reactions with amides

Nitriles reactions with arynes

Nitriles reactions with diaryl ketone dianions

Nitriles reactions with hydrogen halides

Nitriles reactions with hypochlorite

Nitriles reactions with organocerium compounds

Nitriles reactions with organometallic

Nitriles reactions with thiols

Nitriles redox reactions

Nitriles substitution reactions

Nitriles synthesis via SrnI reaction

Nitriles useful reactions

Nitriles, (3-keto Knoevenagel reaction

Nitriles, Reformatsky reactions

Nitriles, acid catalyzed addition reaction

Nitriles, addition reactions hydrolysis

Nitriles, conjugated, reaction with

Nitriles, conjugated, reaction with ammonia

Nitriles, coordinated Reaction with nucleophiles

Nitriles, dimethyl carbonate reactions

Nitriles, enolates, reactions

Nitriles, formation reaction with hydrazoic acid

Nitriles, reaction with borane

Nitriles, reaction with ester enolates

Nitriles, reaction with organolithium reagents

Nucleophiles reaction with nitriles

Nucleophilic addition reactions of nitriles

Opening reactions with nitriles

Organometallic compounds reactions with nitriles

Organometallic reagents reaction with nitriles

Other Nitrile-Forming Reactions

Oximes reaction to form nitrile oxide

Phenylmagnesium bromide, reaction with nitriles

Phosphonate carbanions, reactions with nitrile

Photochemical reaction with nitriles

Reaction LXXXIX.—Hydrolysis of Nitriles to Amides

Reaction Saponification of an Acid-Nitrile

Reaction alkyne-nitrile metathesis

Reaction of Grignard reagents with nitriles

Reaction of Methanol with Nitriles, Ketones, and Esters

Reaction with malononitrile nitriles

Reaction with nitrile enolate anions

Reaction with nitrile oxides

Reaction with nitriles

Reactions and characterisation of aliphatic cyanides (nitriles)

Reactions and characterisation of aromatic nitriles

Reactions of Coordinated Nitriles and Related Ligands

Reactions of Nitrile Imines

Reactions of Nitrile Oxides

Reactions of Nitriles

Reactions of a Nitrile

Reactions with Nitriles and Nitrosoalkanes

Reduction reaction nitrile

Rhodium carbene reactions nitriles

Ritter reaction nitriles

Schmidt reaction, nitriles from

Sodium ethoxide, reaction with nitriles

Subject reactions with nitriles

Sulfuric acid, reaction with nitriles

Tertiary nitriles reactions

UF-Membrane Bioreactors for Kinetics Characterization of Nitrile Hydratase-Amidase-catalyzed Reactions a Short Survey

Unsaturated nitriles reaction

Unsaturated nitriles, synthesis reaction

Uracils reaction with nitrile oxides

Water reaction with nitriles

Yamamoto’s reagent reactions with nitriles

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